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well as their integration into the existing process flow. Using an innovative direct etch approach, the postdoc will study the impact of the process step on the superconducting properties. The influence of line dimensions on
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applied magnetic field. A major part of the project will also include close collaboration with theoretical and computational materials scientists. The postdoc will perform targeted exploratory reactions in
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Description of the offer : Project description: Spin-polarized electrons form the basis of spintronics, that has enabled ultrahigh-density magnetic memory storage and precision sensing. In addition
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Explore fundamental spin physics at the interface of acoustics and MRI, and help develop a new imaging contrast sensitive to microscopic magnetic-field inhomogeneities. Job description We
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Researcher (R2) Positions Postdoc Positions Application Deadline 1 Nov 2026 - 01:00 (Europe/Luxembourg) Country Luxembourg Type of Contract Temporary Job Status Full-time Hours Per Week 40 Offer Starting Date
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Max Planck Institute for Solar System Research, Göttingen | Gottingen, Niedersachsen | Germany | 13 days ago
Job Code: Sonne: Postdocs SO/PHI-Solanki Job Offer from September 09, 2026 The Max Planck Institute for Solar System Research (MPS) in Göttingen is one of the world's leading research institutions
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. The Postdoctoral Scholar's research activities will involve the application of the following technologies and methodologies: 3 Tesla Siemens Prisma magnetic resonance imaging (MRI) scanner with extensive equipment
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7 Sep 2026 Job Information Organisation/Company Fundació per a la Universitat Oberta de Catalunya Research Field Computer science Researcher Profile Recognised Researcher (R2) Positions Postdoc
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. You will work with a team funded by an ERC Advanced proposal to do this using a radical new approach based on silicon nitride ribbon torsional resonators coupled directly via magnetic flux to a
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to develop and apply quantum sensors to problems in biophysics. Quantum sensors exploit the coherence and state-dependent response of individual quantum systems to detect magnetic, electric, and